Multi-source Collaborative Optimal Scheduling Platform for Flexible Interconnected AC/DC Hybrid Distribution Networks
摘要
Flexible interconnected AC/DC hybrid distribution networks have a large load capacity and cannot achieve the expected collaborative scheduling effect. In order to improve the power supply quality and stability of the distribution network, a multi-source collaborative optimal scheduling platform for flexible interconnected AC/DC hybrid distribution networks is proposed. The platform establishes a multi-objective optimization function with the goal of minimizing the total scheduling cost, power loss, and adjustment amount, and sets constraints to calculate the optimal solution of the function. Search for the optimal scheduling strategy and execute it to build a multi-source collaborative optimal scheduling platform for flexible interconnected AC/DC hybrid distribution networks. The experimental results show that the platform can effectively optimize the scheduling of AC/DC hybrid distribution networks, improve the power supply quality and stability of the distribution network, and under the application of the design method, the load volume of the distribution network is small, and the load fluctuation is relatively gentle.